Review




Structured Review

SCANCO USA INC rigid 3d registration procedure
<t>3D</t> HR-pQCT images of a stable, simple distal radius fracture at 9 days (baseline) and at follow-up 26, 44 and 87 days post-fracture showing regions of bone formation (green), resorption (red) and no change (blue). Images were obtained by superposition of the follow-up images over the baseline image. Cortical fracture locations (indicated by arrows) are bridged at 87 days post-fracture.
Rigid 3d Registration Procedure, supplied by SCANCO USA INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rigid+3d+registration+procedure/rigid+3d+registration+procedure/pmc05526550-37-1-11
Average 90 stars, based on 1 article reviews
rigid 3d registration procedure - by Bioz Stars, 2026-10
90/100 stars

Images

1) Product Images from "Feasibility of rigid 3D image registration of high-resolution peripheral quantitative computed tomography images of healing distal radius fractures"

Article Title: Feasibility of rigid 3D image registration of high-resolution peripheral quantitative computed tomography images of healing distal radius fractures

Journal: PLoS ONE

doi: 10.1371/journal.pone.0179413

3D HR-pQCT images of a stable, simple distal radius fracture at 9 days (baseline) and at follow-up 26, 44 and 87 days post-fracture showing regions of bone formation (green), resorption (red) and no change (blue). Images were obtained by superposition of the follow-up images over the baseline image. Cortical fracture locations (indicated by arrows) are bridged at 87 days post-fracture.
Figure Legend Snippet: 3D HR-pQCT images of a stable, simple distal radius fracture at 9 days (baseline) and at follow-up 26, 44 and 87 days post-fracture showing regions of bone formation (green), resorption (red) and no change (blue). Images were obtained by superposition of the follow-up images over the baseline image. Cortical fracture locations (indicated by arrows) are bridged at 87 days post-fracture.

Techniques Used:

2D HR-pQCT slices with contours (left) and 3D model (right) of the fragments in two stable fractures (top and middle) and a fracture with secondary displacement (bottom) that were registered in this study. The volume [mm 3 ] per fragment as well as of the complete fracture is shown between brackets.
Figure Legend Snippet: 2D HR-pQCT slices with contours (left) and 3D model (right) of the fragments in two stable fractures (top and middle) and a fracture with secondary displacement (bottom) that were registered in this study. The volume [mm 3 ] per fragment as well as of the complete fracture is shown between brackets.

Techniques Used:

Related Articles

other:

Article Title: Feasibility of rigid 3D image registration of high-resolution peripheral quantitative computed tomography images of healing distal radius fractures
Article Snippet: The rigid 3D registration procedure (Image Processing Language version 5.16/regis 1.09b, Scanco Medical AG, Brütissellen, Switzerland) used in the present study can be divided into two parts:



Similar Products

90
SCANCO USA INC rigid 3d registration procedure
<t>3D</t> HR-pQCT images of a stable, simple distal radius fracture at 9 days (baseline) and at follow-up 26, 44 and 87 days post-fracture showing regions of bone formation (green), resorption (red) and no change (blue). Images were obtained by superposition of the follow-up images over the baseline image. Cortical fracture locations (indicated by arrows) are bridged at 87 days post-fracture.
Rigid 3d Registration Procedure, supplied by SCANCO USA INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rigid+3d+registration+procedure/rigid+3d+registration+procedure/pmc05526550-37-1-11
Average 90 stars, based on 1 article reviews
rigid 3d registration procedure - by Bioz Stars, 2026-10
90/100 stars
  Buy from Supplier

Image Search Results


3D HR-pQCT images of a stable, simple distal radius fracture at 9 days (baseline) and at follow-up 26, 44 and 87 days post-fracture showing regions of bone formation (green), resorption (red) and no change (blue). Images were obtained by superposition of the follow-up images over the baseline image. Cortical fracture locations (indicated by arrows) are bridged at 87 days post-fracture.

Journal: PLoS ONE

Article Title: Feasibility of rigid 3D image registration of high-resolution peripheral quantitative computed tomography images of healing distal radius fractures

doi: 10.1371/journal.pone.0179413

Figure Lengend Snippet: 3D HR-pQCT images of a stable, simple distal radius fracture at 9 days (baseline) and at follow-up 26, 44 and 87 days post-fracture showing regions of bone formation (green), resorption (red) and no change (blue). Images were obtained by superposition of the follow-up images over the baseline image. Cortical fracture locations (indicated by arrows) are bridged at 87 days post-fracture.

Article Snippet: The rigid 3D registration procedure (Image Processing Language version 5.16/regis 1.09b, Scanco Medical AG, Brütissellen, Switzerland) used in the present study can be divided into two parts:

Techniques:

2D HR-pQCT slices with contours (left) and 3D model (right) of the fragments in two stable fractures (top and middle) and a fracture with secondary displacement (bottom) that were registered in this study. The volume [mm 3 ] per fragment as well as of the complete fracture is shown between brackets.

Journal: PLoS ONE

Article Title: Feasibility of rigid 3D image registration of high-resolution peripheral quantitative computed tomography images of healing distal radius fractures

doi: 10.1371/journal.pone.0179413

Figure Lengend Snippet: 2D HR-pQCT slices with contours (left) and 3D model (right) of the fragments in two stable fractures (top and middle) and a fracture with secondary displacement (bottom) that were registered in this study. The volume [mm 3 ] per fragment as well as of the complete fracture is shown between brackets.

Article Snippet: The rigid 3D registration procedure (Image Processing Language version 5.16/regis 1.09b, Scanco Medical AG, Brütissellen, Switzerland) used in the present study can be divided into two parts:

Techniques: